Records |
Author |
Mitter, H.; Schönhart, M.; Meyer, I.; Mechtler, K.; Schmid, E.; Sinabell, F.; Bachner, G. |
Title |
Agriculture |
Type |
Book Chapter |
Year |
2015 |
Publication |
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Abbreviated Journal |
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Volume |
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Issue |
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Pages |
121-144 |
Keywords |
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Abstract |
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Address |
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Corporate Author |
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Thesis |
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Publisher |
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Place of Publication |
Vienna |
Editor |
Steininger, K.; König, M.; Bednar-Friedl, B.; Kranzl, L.; Loibl, W.; Prettenthaler, F. |
Language |
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Original Title |
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Series Title |
Economic Evaluation of Climate Change Impacts. Development of a Cross-Sectoral Framework and Results for Austria |
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ISSN |
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Expedition |
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Conference |
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Notes |
TradeM, ftnotmacsur |
Approved |
no |
Call Number |
MA @ admin @ |
Serial |
5014 |
Permanent link to this record |
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Author |
Sinabell, F.; Schönhart, M.; Schmid, E. |
Title |
Austrian Agriculture 2010-2050. Quantitative Effects of Climate Change Mitigation Measures. An analysis of the scenarios WEM, WAM, WAM+ and a sensitivity analysis of scenario WEM |
Type |
Report |
Year |
2015 |
Publication |
Studie des Österreichischen Instituts für Wirtschaftsforschung im Auftrag des Umweltbundesamts |
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Issue |
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Pages |
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Publisher |
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Place of Publication |
Vienna, Austria |
Editor |
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Language |
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Original Title |
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Series Editor |
Österreichisches Institut für Wirtschaftsforschung |
Series Title |
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Series Volume |
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Series Issue |
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Edition |
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ISSN |
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ISBN |
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Area |
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Expedition |
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Conference |
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Notes |
TradeM |
Approved |
no |
Call Number |
MA @ admin @ |
Serial |
5017 |
Permanent link to this record |
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Author |
Schönhart, M.; Sinabell, F. |
Title |
Scenarios for the Austrian agricultural sector until 2025 considering greenhouse gas mitigation |
Type |
Conference Article |
Year |
2015 |
Publication |
Jahrbuch der ÖGA |
Abbreviated Journal |
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Volume |
25 |
Issue |
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Pages |
231-240 |
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Abstract |
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Address |
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Thesis |
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Publisher |
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Place of Publication |
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Editor |
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Series Editor |
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Conference |
Agrarian Perspectives XXIV, 25th Annual Conference of the Austrian Society of Agricultural Economics, 2015-09-16 to 2015-09-18, Prague |
Notes |
TradeM |
Approved |
no |
Call Number |
MA @ admin @ |
Serial |
5028 |
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Author |
Hamidov, A.; Helming, K.; Bellocchi, G.; Bojar, W.; Dalgaard, T.; Ghaley, B.B.; Hoffmann, C.; Holman, I.; Holzkämper, A.; Krzeminska, D.; Kværnø, S.H.; Lehtonen, H.; Niedrist, G.; Øygarden, L.; Reidsma, P.; Roggero, P.P.; Rusu, T.; Santos, C.; Seddaiu, G.; Skarbøvik, E.; Ventrella, D.; Żarski, J.; Schönhart, M. |
Title |
Impacts of climate change adaptation options on soil functions: A review of European case-studies |
Type |
Journal Article |
Year |
2018 |
Publication |
Land Degradation & Development |
Abbreviated Journal |
Land Degradation & Development |
Volume |
29 |
Issue |
8 |
Pages |
2378-2389 |
Keywords |
agricultural adaptation; DPSIR; regional case-studies; soil degradation; Sustainable Development Goals; Agricultural Practices; Ecosystem Services; Land Management; Netherlands; Farm; Environment; Challenges; Catchments; Framework; Nitrogen |
Abstract |
Soils are vital for supporting food security and other ecosystem services. Climate change can affect soil functions both directly and indirectly. Direct effects include temperature, precipitation, and moisture regime changes. Indirect effects include those that are induced by adaptations such as irrigation, crop rotation changes, and tillage practices. Although extensive knowledge is available on the direct effects, an understanding of the indirect effects of agricultural adaptation options is less complete. A review of 20 agricultural adaptation case-studies across Europe was conducted to assess implications to soil threats and soil functions and the link to the Sustainable Development Goals (SDGs). The major findings are as follows: (a) adaptation options reflect local conditions; (b) reduced soil erosion threats and increased soil organic carbon are expected, although compaction may increase in some areas; (c) most adaptation options are anticipated to improve the soil functions of food and biomass production, soil organic carbon storage, and storing, filtering, transforming, and recycling capacities, whereas possible implications for soil biodiversity are largely unknown; and (d) the linkage between soil functions and the SDGs implies improvements to SDG 2 (achieving food security and promoting sustainable agriculture) and SDG 13 (taking action on climate change), whereas the relationship to SDG 15 (using terrestrial ecosystems sustainably) is largely unknown. The conclusion is drawn that agricultural adaptation options, even when focused on increasing yields, have the potential to outweigh the negative direct effects of climate change on soil degradation in many European regions. |
Address |
2018-10-16 |
Corporate Author |
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Thesis |
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Publisher |
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Place of Publication |
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Editor |
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Language |
English |
Summary Language |
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Original Title |
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Series Editor |
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Series Title |
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Series Volume |
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Series Issue |
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Edition |
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ISSN |
1085-3278 |
ISBN |
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Notes |
XC, TradeM, ft_macsur |
Approved |
no |
Call Number |
MA @ admin @ |
Serial |
5210 |
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Author |
Schönhart, M. |
Title |
Case 1: Integrated assessment of climate change mitigation and adaptation trade-offs in Austria |
Type |
Conference Article |
Year |
2016 |
Publication |
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Abbreviated Journal |
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Volume |
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Issue |
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Pages |
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Keywords |
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Abstract |
Presentation SC 2.10 Farming systems. Case 1: Integrated assessment of climate change mitigation and adaptation trade-offs in Austria, Martin Schönhart, Universität für Bodenkultur Wien, Austria (2016). Presented at the international conference Adaptation Futures 2016, Rotterdam, the Netherlands. No Label |
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Place of Publication |
Rotterdam (Netherlands) |
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Conference |
AdaptationFutures 2016, 10-13 May 2016, Rotterdam |
Notes |
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Approved |
no |
Call Number |
MA @ admin @ |
Serial |
2804 |
Permanent link to this record |